Morse Predecomposition of an Invariant Set.

IF 1.9 3区 数学 Q1 MATHEMATICS Qualitative Theory of Dynamical Systems Pub Date : 2025-01-01 Epub Date: 2024-11-15 DOI:10.1007/s12346-024-01144-3
Michał Lipiński, Konstantin Mischaikow, Marian Mrozek
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Abstract

Motivated by the study of recurrent orbits and dynamics within a Morse set of a Morse decomposition we introduce the concept of Morse predecomposition of an isolated invariant set within the setting of both combinatorial and classical dynamical systems. While Morse decomposition summarizes solely the gradient part of a dynamical system, the developed generalization extends to the recurrent component as well. In particular, a chain recurrent set, which is indecomposable in terms of Morse decomposition, can be represented more finely in the Morse predecomposition framework. This generalization is achieved by forgoing the poset structure inherent to Morse decomposition and relaxing the notion of connection between Morse sets (elements of Morse decomposition) in favor of what we term 'links'. We prove that a Morse decomposition is a special case of Morse predecomposition indexed by a poset. Additionally, we show how a Morse predecomposition may be condensed back to retrieve a Morse decomposition.

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不变集的莫尔斯预分解。
受摩尔斯分解的摩尔斯集合内的循环轨道和动力学研究的启发,我们在组合和经典动力学系统中引入了孤立不变集的摩尔斯预分解概念。虽然莫尔斯分解只概括了动态系统的梯度部分,但所发展的概括也扩展到了递归部分。特别是,在莫尔斯分解中不可分解的链式循环集,可以在莫尔斯预分解框架中得到更精细的表示。我们放弃了莫尔斯分解所固有的正集结构,放宽了莫尔斯集合(莫尔斯分解的元素)之间的连接概念,转而使用我们称之为 "链接 "的概念,从而实现了这种概括。我们证明了莫尔斯分解是莫尔斯谓分解的一个特例,它以一个正集为索引。此外,我们还展示了如何通过压缩莫尔斯预分解来检索莫尔斯分解。
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来源期刊
Qualitative Theory of Dynamical Systems
Qualitative Theory of Dynamical Systems MATHEMATICS, APPLIED-MATHEMATICS
CiteScore
2.50
自引率
14.30%
发文量
130
期刊介绍: Qualitative Theory of Dynamical Systems (QTDS) publishes high-quality peer-reviewed research articles on the theory and applications of discrete and continuous dynamical systems. The journal addresses mathematicians as well as engineers, physicists, and other scientists who use dynamical systems as valuable research tools. The journal is not interested in numerical results, except if these illustrate theoretical results previously proved.
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